ASVAB Mechanical Comprehension Practice Test 737916 Results

Your Results Global Average
Questions 5 5
Correct 0 3.02
Score 0% 60%

Review

1 If you have a gear train with three gears, the first with 24 teeth, the second with 16 teeth, and the third with 6 teeth, what is its mechanical advantage?
51% Answer Correctly
6
12
4
4.4

Solution

The mechanical advantage of a gear train is its gear ratio. The gear ratio (Vr) is the product of the gear ratios between the pairs of meshed gears. Let N represent the number of teeth for each gear:

Vr = \( \frac{N_1}{N_2} \) \( \frac{N_2}{N_3} \) \( \frac{N_3}{N_4} \) ... \( \frac{N_n}{N_{n+1}} \)

In this problem, we have three gears so the equation becomes:

Vr = \( \frac{N_1}{N_2} \) \( \frac{N_2}{N_3} \) = \( \frac{24}{16} \) \( \frac{16}{6} \) = \( \frac{24}{6} \) = 4


2 If the green box weighs 20 lbs. and is 7 ft. from the fulcrum, how much weight would need to be placed at the blue arrow to balance the lever if the arrow's distance from the fulcrum is 4 ft.?
63% Answer Correctly
8.75 lbs.
35 lbs.
105 lbs.
140 lbs.

Solution

To balance this lever the torques on each side of the fulcrum must be equal. Torque is weight x distance from the fulcrum so the equation for equilibrium is:

Rada = Rbdb

where a represents the left side of the fulcrum and b the right, R is resistance (weight) and d is the distance from the fulcrum.

Solving for Rb, our missing value, and plugging in our variables yields:

Rb = \( \frac{R_ad_a}{d_b} \) = \( \frac{20 lbs. \times 7 ft.}{4 ft.} \) = \( \frac{140 ft⋅lb}{4 ft.} \) = 35 lbs.


3

Torque involves a perpendicular force applied to a lever arm that moves around a center of rotation. Increasing the length of the lever arm will do which of the following?

54% Answer Correctly

decrease torque

increase applied force

decrease applied force

increase torque


Solution

Torque measures force applied during rotation: τ = rF.  Torque (τ, the Greek letter tau) = the radius of the lever arm (r) multiplied by the force (F) applied. Radius is measured from the center of rotation or fulcrum to the point at which the perpendicular force is being applied. The resulting unit for torque is newton-meter (N-m) or foot-pound (ft-lb).


4 If a 30 lbs. weight is placed 7 ft. from the fulcrum at the blue arrow and the green box is 4 ft. from the fulcrum, how much would the green box have to weigh to balance the lever?
61% Answer Correctly
0 lbs.
210 lbs.
17.5 lbs.
52.5 lbs.

Solution

To balance this lever the torques on each side of the fulcrum must be equal. Torque is weight x distance from the fulcrum so the equation for equilibrium is:

Rada = Rbdb

where a represents the left side of the fulcrum and b the right, R is resistance (weight) and d is the distance from the fulcrum.

Solving for Ra, our missing value, and plugging in our variables yields:

Ra = \( \frac{R_bd_b}{d_a} \) = \( \frac{30 lbs. \times 7 ft.}{4 ft.} \) = \( \frac{210 ft⋅lb}{4 ft.} \) = 52.5 lbs.


5

Which of the following is not a type of bridge?

74% Answer Correctly

block

cable

truss

arch


Solution

The six basic bridge forms are beam, truss, arch, cantilever, cable, and suspension.